Bulk Ceramic Fiber

Bulk Ceramic Fiber

It is the main material for the production of fiber insulation products with the characteristics of stable performance, long fiber, strong tensile, excellent thermal stability, clean and white color.

  • Fast Delievery
  • Quality Assurance
  • 24/7 Customer Service
Product Introduction

Product Description of Bulk Ceramic Fiber:

The ceramic fiber is produced by being spun into bulk fibers. It is the main material for the production of fiber insulation products with the characteristics of stable performance, long fiber, strong tensile, excellent thermal stability, clean and white color. It is also perfect material for sealing, filling and insulating in high-temperature environment.

Advantages of Bulk Ceramic Fiber:

High Temperature Resistance: Bulk ceramic fiber can withstand extremely high temperatures, typically up to 2300°F (1260°C) or even higher. This makes it suitable for applications in industries like metallurgy, glass, and ceramics, where extreme heat is common.

Low Thermal Conductivity: Ceramic fiber insulation has low thermal conductivity, meaning it is an effective insulator. It can efficiently retain heat, which makes it valuable for insulating furnaces, kilns, and other high-temperature equipment.

Lightweight: Ceramic fiber is lightweight, making it easy to handle and install. Its low density also reduces the structural load on the equipment it insulates.

Excellent Thermal Shock Resistance: It can endure rapid temperature changes without cracking or degrading, which is vital for applications where equipment is exposed to varying temperatures.

Chemical Resistance: Ceramic fiber is resistant to most chemicals, making it suitable for use in corrosive environments, such as in the chemical industry.

Low Heat Storage: This material has low heat storage capacity, which means it heats up quickly and cools down rapidly, allowing for more efficient temperature control.

Non-combustible: Ceramic fiber is non-combustible, which is a critical safety feature, especially in high-temperature applications.

Flexibility and Easy Installation: It is flexible and can be easily shaped and cut to fit various equipment and structures, simplifying installation.

Sound Insulation: In addition to its thermal insulation properties, ceramic fiber also provides some degree of sound insulation, making it useful in applications where noise reduction is important.

Energy Efficiency: By insulating equipment and structures with ceramic fiber, industries can improve energy efficiency by reducing heat loss and energy consumption.

Longevity: Properly installed and maintained ceramic fiber insulation can have a long service life, making it cost-effective over time.

Environmental Friendliness: Ceramic fiber is asbestos-free and does not emit harmful gases when exposed to high temperatures. It is considered an environmentally friendly insulation material.

Application of Bulk Ceramic Fiber:

Industrial Furnaces and Kilns: Ceramic fiber is extensively used as insulation in high-temperature industrial furnaces and kilns. It helps in conserving energy, reducing heat loss, and maintaining high temperatures for various processes like metal smelting, glassmaking, and ceramics production.

Boilers and Heaters: Ceramic fiber insulation is employed in boilers, heaters, and other heat-generating equipment to enhance energy efficiency by minimizing heat dissipation. It ensures that heat is retained within the system, leading to reduced fuel consumption.

Foundries: Foundries utilize ceramic fiber insulation in mold-making processes. The material provides excellent insulation, ensuring uniform heating during the metal casting process.

Petrochemical Industry: Ceramic fiber is used in the insulation of pipes, vessels, and equipment in the petrochemical industry. It helps maintain the high temperatures required for various chemical processes.

Power Plants: Ceramic fiber insulation is applied in power plants for insulation in boilers, ducts, and pipes. It aids in maintaining high temperatures and improving the overall energy efficiency of power generation processes.

Aerospace Industry: In the aerospace sector, ceramic fiber is used for insulating spacecraft, aircraft engines, and other high-temperature components. Its lightweight nature is particularly beneficial in aerospace applications.

Automotive Industry: Ceramic fiber finds applications in automotive components, especially in exhaust systems. It helps in reducing heat transfer to surrounding areas, ensuring safety and improving the overall efficiency of the exhaust system.

Fire Protection: Ceramic fiber materials are used in fire protection systems, including fire-resistant doors, curtains, and fireproof coatings. Its non-combustible nature and thermal insulation properties make it ideal for such applications.

Expansion Joints: Ceramic fiber textiles are utilized in expansion joint applications. The material can withstand high temperatures and mechanical stress, making it suitable for use in industrial expansion joints.

High-Temperature Gaskets and Seals: Ceramic fiber gaskets and seals are employed in applications where resistance to high temperatures and thermal cycling is required, such as in automotive engines and industrial equipment.

Insulation in Home Appliances: Ceramic fiber is used in home appliances like ovens and stoves to provide insulation, ensuring that the appliances remain energy-efficient and safe to use.

Laboratory and Research Equipment: Ceramic fiber is utilized in laboratory and research equipment, particularly in high-temperature furnaces and reaction vessels, ensuring precise and controlled heating environments.

Technical Parameters of Ceramic Fiber Bulk:

Type

COM

STD

HP

HA

HZ

Classification temp(ºC)

1100

1260

1260

1360

1430

(2012℉)

(2300℉)

(2300℉)

(2480℉)

(2606℉)

Work temp(ºC)

<1000

1050

1100

1200

1350

(1832℉)

(1922℉)

(2012℉)

(2192℉)

(2462℉)

Color

Pure White

Pure White

Pure White

Pure White

Pure White

Fiber diameter(um)

2--3

2--3

2--3

2--3

2--3

AL2O3(%)

44

45--46

47--49

52--55

39--40

AL2O3+SIO2(%)

96

97

99

99

-------

ZrO2(%)

--------

--------

--------

--------

15--17

Fe2O3(%)

<1.2

<1.0

0.2

0.2

0.2

Na2O+K2O(%)

≤0.5

≤0.5

0.2

0.2

0.2


image001

You Might Also Like

(0/10)

clearall